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Applicability of Nanofiltration and Reverse Osmosis for the Treatment of Wastewater of Different Origin

机译:纳滤和反渗透技术在不同来源废水处理中的适用性

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Membrane separations are finding greater use in wastewater treatment because of their efficiency. In order to prove the effectiveness of membrane filtration an applicability study is carried out. Nanofiltration and reverse osmosis membranes are tested under quite different conditions to reduce the chemical oxygen demands (COD) of wastewaters to meet the Council Directive 76/464/EEC release limit. Two kinds of real wastewaters were selected for the investigation. The wastewaters represent extreme different circumstances since the difference between their COD is two orders of magnitude. All of the membranes tested can be applied either to the treatment of wastewater of high COD (pharmaceutical wastewater) or wastewater of low COD (dumpsite leachate), since the different conditions do not change the membrane characteristics. The experimental data show that none of the membranes can decrease the COD to the release limit in one step. However, if two-stage filtrations (nanofiltration followed by reverse osmosis) are accomplished for both of the wastewaters, a total COD reduction of 94% can be achieved. With the application of the two-stage filtration the COD of the wastewater of low COD can be decreased below the release limit but in case of wastewater of the high COD further treatment will be required.
机译:由于膜分​​离效率高,因此在废水处理中的应用越来越广泛。为了证明膜过滤的有效性,进行了适用性研究。在完全不同的条件下对纳滤膜和反渗透膜进行了测试,以降低废水的化学需氧量(COD),以达到理事会指令76/464 / EEC的排放限制。选择了两种实际废水进行调查。由于废水的化学需氧量之间的差异为两个数量级,因此它们所代表的环境极为不同。由于不同的条件不会改变膜的特性,因此所有测试过的膜均可用于处理高COD的废水(制药废水)或低COD的废水(垃圾渗滤液)。实验数据表明,任何一种膜都无法一步将COD降至释放极限。但是,如果对两种废水均进行了两阶段过滤(纳滤,然后进行反渗透),则可实现94%的总COD降低。通过采用两阶段过滤,可以将低COD废水的COD降低到释放极限以下,但是对于高COD废水,则需要进一步处理。

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